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Phantasy [73]
3 years ago
13

Simplify. Express your answer as a single fraction in simplest form. 2 46 + 3bc 5 DO

Mathematics
1 answer:
Aleksandr-060686 [28]3 years ago
8 0

Answer:

Step-by-step explanation:

The fractions need a common denominator before you can add them together.

The least common denominator is 15bc.

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If x=-4 what is the value of the following expression?
EleoNora [17]

Answer:

i think it's -46 but i don't know srry if this does not help

Step-by-step explanation:

3 0
3 years ago
Veronica’s velocity was measured as 4.3 m/s. She displaced 20 meters in 4.7 seconds. Which piece of information is missing for t
Anit [1.1K]

Answer:

Direction is missing

Step-by-step explanation:

Veronica’s velocity was measured as 4.3 m/s. She displaced 20 meters in 4.7 seconds. We know that velocity is a vector quantity. It has both magnitude as well as direction. Velocity is defined as the total distance per unit time I.e.  

                 i.e. the magnitude of velocity is 4.3 m/s  

Here, only velocity is given but its direction is missing. So, the missing information is " the direction ".    

5 0
3 years ago
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You are selling tickets for the school play "13". Student tickets cost $4 and general admission tickets cost $6. You sell 525 ti
Scilla [17]

Answer:

Step-by-step explanation:

s= student ticket

g= general admisson ticket

4s+6g=2876

s+g=525

4s+6g=2876

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add both equations

2g=776

g=388

s+g=525

s+388=525

s=137

6 0
3 years ago
Please help meee!!! 5 stars to the best answer.
vovikov84 [41]

Answer:

3 cm

Step-by-step explanation:

First, find the volume of the cone.

V = \frac{1}{3}\pir²h

V = \frac{1}{3}(3.14)(9)(12)

V = 113.04

This means the sphere is also 113.04

Use the formula V = \frac{4}{3}\pir³

113.04 = \frac{4}{3}(3.14)r³

113.04 = 4.19r³

26.98 = r³

3 ≈ r

6 0
3 years ago
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A second order differential equation for the function yt is... O a differential equation involving the second power of y a diffe
Neporo4naja [7]

Answer: Hi! A second order differential equation for the function y(t) has the next shape:

y''(t) + p(t)y'(t) + q(t)y(t) = g(t)

Where p(t), q(t) and g(t) are functions of t.

Then a second order differential equation for y is a differential equation involving the second derivative of y.

Is useful to remember that the order in a differential equation tells us the number of derivations involved in our function, for example, a "third order differential equation" is that involving the third derivative of y, but usually for orders above of two, are called "higher orders differential equations"

3 0
4 years ago
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